Abstract:
The present invention provides a method for improving the adhesion capability between the π-type bus electrode and ITO (indium tin oxide) transparent conductive layer. The method includes an ITO transparent conductive layer as an ITO electrode is formed on the glass substrate by sputtering method. Then, a photoresist layer with a cavity pattern is formed on the portion of the ITO transparent conductive film. Next, an etching process is used to remove portion of the ITO transparent conductive film to form a cavity within the ITO transparent conductive film. Then, after removing the photoresist layer, a silver paste as a bus electrode is formed on the glass substrate and on the ITO transparent conductor film to form a pi (π) type bus electrode by print method. Due to the pi side of the pi-type electrode is formed on the cavity thereby the adhesion capability between the pi-type bus electrode and exposed glass substrate within the cavity, such that the adhesion capability between the π type bus electrode and ITO conductive film can be improved. Thus, the edge warp phenomenon of the π type bus electrode can be diminished.
Abstract:
A method for forming a patterned ITO structure by using a photosensitive ITO solution is provided. By mixing both the ITO and photosensitive material to form a photosensitive ITO solution on a substrate, a patterned ITO structure is available by directly exposing and developing the photosensitive ITO layer. Significantly, no photo-resist layer is required.
Abstract:
An front plate structure for a plasma display panel is described. In accordance with the present invention, a protruding space pad structure is formed on the dielectric layer or protective layer of the front plate. The space pad is used to form the height difference on the surface of the front plate, about 3 μm to 15 μm. The height difference forms gas channels between the front plate and the discharge region to improve the performance of the vacuuming and refilling gas steps.
Abstract:
A light emitting assembly includes active matrix (AM) light emitting circuits and an AM driver circuit. Each AM light emitting circuit includes at least one light emitting element, at least one shift register and a current control sub-circuit. The at least one shift register is configured to generate a control signal according to the clock signal from a clock line and the data signal from an inter-array data line and the control signal from the at least one shift register. The current control sub-circuit is configured to control the brightness of the at least one light emitting element according to the base current from a current supply line and the control signal. The AM driver circuit is configured to generate the data signal according to a serial data packet, and provide the data signal, the clock signal and the base current to the AM light emitting circuits.
Abstract:
A driving electrode structure of a plasma display panel for improving operation margin is described. A plurality openings is formed in a transparent electrode according to the driving characteristics of fluorescent layer of each luminous cell to adjust the effective area of the transparent electrode in each luminous cell, thereby increasing the operation margin of the sustaining voltage.
Abstract:
A plasma display panel with a plurality of non-transparent display electrode pairs and a method of forming the same. Each electrode of every non-transparent display electrode pair is separated from but close to one another for effective discharging. For effective displaying, it is necessary that the area of the non-transparent display electrodes is smaller than the area of the panel. In the present invention, the shape of the non-transparent display electrodes are manufactured in a shape with a plurality of openings, such as a ladder or a chain.
Abstract:
A bus electrode of the present invention is formed by first coating a Ru-containing layer on the front plate and the transparent electrodes. Then, an Ag-containing layer is coated over the Ru-containing layer. In accordance with the present invention, the coating area of the Ru-containing layer is larger than the coating area of the Ag-containing layer to improve adhesion between the bus electrodes, glass plate and the transparent electrodes. Then, a photolithography process is performed to define the bus electrodes.